| Literature DB >> 26771489 |
Tamara Ouspenskaia1, Irina Matos1, Aaron F Mertz1, Vincent F Fiore1, Elaine Fuchs2.
Abstract
Adult stem cell (SC) maintenance and differentiation are known to depend on signals received from the niche. Here, however, we demonstrate a mechanism for SC specification and regulation that is niche independent. Using immunofluorescence, live imaging, genetics, cell-cycle analyses, in utero lentiviral transduction, and lineage-tracing, we show that in developing hair buds, SCs are born from asymmetric divisions that differentially display WNT and SHH signaling. Displaced WNT(lo) suprabasal daughters become SCs that respond to paracrine SHH and symmetrically expand. By contrast, basal daughters remain WNT(hi). They express but do not respond to SHH and hence maintain slow-cycling, asymmetric divisions. Over time, they become short-lived progenitors, generating differentiating daughters rather than SCs. Thus, in contrast to an established niche that harbors a fixed SC pool whose expelled progeny differentiate, asymmetric divisions first specify and displace early SCs into an environment conducive to expansion and later restrict their numbers by switching asymmetric fates.Entities:
Mesh:
Substances:
Year: 2016 PMID: 26771489 PMCID: PMC4850916 DOI: 10.1016/j.cell.2015.11.058
Source DB: PubMed Journal: Cell ISSN: 0092-8674 Impact factor: 41.582